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It bring forward that semi-aerobic can accelerate degradation velocity of COD and ammoniac nitrogen and promote the stabilization process of landfill , which also affords technic guidance for accelerating landfill stabilization and leachate self-purity .

初步揭示了准好氧填埋垃圾降解的基本机理,分析了影响垃圾体降解的因素,为今后准好氧填埋技术的深入研究和工程应用提供理论基础和技术支持,并为厌氧填埋场的改造提供思路。

Methods: Test of bacteria restrain of Porphyromononas gingivalisand Actinomyces Israelii was carried out by collecting plaque on tongue and periodontis poke from among 30 halitosis patients and 30 healthy people, for the quantitive cultivation of aerobe, microaerobe and anaerobe.

选择30例口臭患者和30例健康人,分别采集舌背舌苔和牙周袋菌斑作细菌的需氧、微需氧和厌氧菌的定量培养,并对牙龈卟啉单胞菌及衣氏放线菌做抑菌试验。

Results:The level of total anaerobic population and total aerobic population of excrement specimens of three kinds of IBS sufferers were different significantly, particularly the level of bifidobacterium and cillobacterium(P.01);the level of bacteroid population was higher significantly in diarrhea-predominant and mixed type of IBS sufferers (P.01);the level of enterococcus population was higher significantly in diarrhea-predominant IBS sufferers(P.05);among the aerobes, the number of Escherichia coli and Staphylococcus aureus colonies were increased by different level(P.01or0.05) in the IBS suffers, in particular, the number of Escherichia coli colonies in diarrhea-predominant IBS sufferers increased most significantly.

结果:三种类型的IBS患者粪便中总厌氧菌群和需氧菌群数目与健康人差异明显,特别是双歧杆菌属和乳酸杆菌属明显减少(P.01;拟杆菌菌落数在腹泻型和混合型IBS患者中明显增加(P.01);肠球菌菌落数在腹泻型IBS患者中明显增加(P.05);需氧菌中患者组大肠杆菌和金黄色葡萄球菌菌落数均不同程度增加(P.01或0.05),大肠杆菌菌落数在腹泻型IBS患者中增加最明显。

In the main response to the region in accordance with the "aeration, idle, precipitation, drainage" cycle of operation procedures, so that sewage in the "aerobic - hypoxia," repeatedly in the carbon to complete, from Nitrogen, and the "aerobic - anaerobic" repeatedly in the completion of phosphorus.

在主反应区内依照"曝气、闲置、沉淀、排水"程序周期运行,使污水在"好氧-缺氧"的反复中完成去碳、脱氮,和在"好氧-厌氧"的反复中完成除磷。

The change is very distinctly of the rate of exorcize of COD in every columns, the rate of exorcize of COD is about 80% in aerobic column which better than anaerobic column.

各填埋柱渗滤液回灌前后COD的去除率变化较大,好氧柱普遍高于厌氧柱,好氧柱COD能够稳定在80%左右。

The growth of microbes is proportional to the amount of ATP; therefor the velocity of aerobic retting with oxygen is far quicker than that of anaerobic retting without oxygen.

微生物的生长量与ATP的数量成正比,因此好氧微生物在有氧的条件下对胶质的降解速度比厌氧微生物在无氧的条件下快得多。

Fluorescent instruments.the colonies of the specimens yielding growth were identified by the vitek32 instruments and kb method was used for the drug sensitivity tests.results three hundred and thirtyone bacteria strains were isolated from a total of 3104 blood culture specimens,with a positive rate of 10.7%.of the identified bacteria,g+ cocci accounted for 50.3%,g-bacilli accounted for 44.7%,fungi accounted for 3.0%,and anaerobian accounted for 1.1%.the susceptibility rates of g-bacilli to imipenem,amikacin and cefoperazone/sulbactam were high.the susceptibility rate of g+ cocci to vancomycin and imipenem were also high.conclusion g+ cocci prevail over g-bacilli in the blood specimens.the staphylococci are the chief bacteria in the childrens blood specimens.both g+ cocci and g-bacilli are sensitive to imipenem.

结果 在3 104份血液培养标本中分离出病原菌331株,阳性检出率为10.7%。病原菌以革兰阳性需氧球菌居首位(50.3%),革兰阴性需氧杆菌次之(44.7%),真菌占3.0%,厌氧菌占1.1%。血液培养中的g+球菌对万古霉素和亚胺培南较为敏感,g-杆菌对亚胺培南、舒普深、丁胺卡那较为敏感。结论血液培养病原菌以g+球菌为主,g-杆菌次之;儿童血液培养病原菌以葡萄球菌属为主;亚胺培南对g+球菌和g-杆菌均具有较高的敏感率。

Therefore, the ways to their separation and identification are different, except similar separation method for caproic acid bacteria and butyric acid bacteria and similar property identification method for acetic acid bacteria and lactobacillus, the other methods are quite different.

摘 要:着重研究粮食酒发酵中4类产酸菌的分离,其中己酸菌与丁酸菌同属梭状芽孢杆菌,为厌氧菌,醋酸菌为好氧菌,乳酸菌则微好氧,因此各自有不同的分离鉴定方法,其中己酸菌与丁酸菌分离方法相似,丁酸菌与乳酸菌的性能鉴定方法相似,其他则各有特色。

The results indicate that (1) After acclimation and induction, Phosphorus Accumulating Organism not only has the characteristics of denitrification, but also has the characteristics of takeup phosphate in aerobic;(2) Denitrifying phosphate accumulating bacteria using NO3- as electron acceptor indeed existed in the conventional enhanced biological phosphorus removal system;(3) The facultative anaerobe seperated during the process of acclimation are Corynebacterium, Pseudodiphtheria corynebacterium, Staphylococcus and Moraxella; all of which can be functioned as denitrifying phosphorus accumulating to various degree.

试验结果表明:(1)好氧聚磷菌经驯化诱导后不但具有反硝化产氮特性,而且具有好氧聚磷特性;(2)在传统的A2O 工艺中存在有以NO3-为电子受体的反硝化聚磷菌;(3)在驯化过程中分离到的兼性厌氧微生物有棒状杆菌属、假白喉棒杆菌、葡萄球菌属及莫拉氏菌属,且都有不同程度的反硝化聚磷功能。

85 And 119486/79. They are a novel type of antibiotic having both the wide antibacterial spectrum and high safety of penicillin and cephem antibiotics belonging to beta -lactam antibiotics, as well as the potent antibacterial activity and high beta -lactamase stability of carbapenem antibiotics.Sodium-(5R, 6S)-6-[-1-hydroxyethyl]-7-oxo-3- [-2-tetrahydrofuryl]-4-thia-1-azabicyclo [3.2.0] hept-2-ene-2-carboxylate 5/2 hydrate (faropenem sodium, hereinafter referred to as compound 1) is currently used as an oral drug for various infectious diseases and is reported to show potent antibacterial activity against not only methicillin-sensitive Staphylococcus aureus, Streptococcus pyrogenes and Streptococcus pneumoniae but also gram-positive bacteria for which conventional beta -lactam drugs have proved ineffective such as penicillin-resistant pneumococci, oral staphylococci and enterococci, also showing a wide antibacterial spectrum covering gram-negative bacteria such as Haemophilus influenzae and anaerobic bacteria such as the genus Bacteroides, which activity is due to its novel skeleton penem ring (Kagaku Ryoho no Ryoiki The Field of Chemotherapy, Vol.

他们是一种新型的抗生素都具有广泛的抗菌谱和高度的安全青霉素和cephem抗生素,属于β-内酰胺类抗生素,以及作为强大的抗菌活性和高β-内酰胺酶稳定的碳青霉烯类antibiotics.sodium -( 5 R , 6 S )-6 -[ - 1 -羟乙基] - 7 -氧- 3 - [ - 2 - t etrahydrofuryl] - 4 -硫杂- 1 -氮杂双环[ 3 。2.0]庚- 2 -节能- 2 -羧酸5 / 2水合物(法罗培南钠,以下简称为化合物1 )是目前用来作为口服药物,为各种传染病和报道,以显示强大的抗菌活性,不仅对甲氧敏感的金黄色葡萄球菌,链球菌pyrogenes和肺炎链球菌,但也克阳性菌为常规β-内酰胺类药物已证明无效,如青霉素耐药pneumococci ,口腔葡萄球菌和肠球菌,也显示出广泛的抗菌谱,包括革兰阴性菌如流感嗜血杆菌和厌氧菌如属杆菌,这活动是由于其新颖的骨架青霉烯环((化学ryoho没有ryoiki领域的化疗),第13卷,第10号,第74-80 , 1997年)。

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